论文标题
在电信波长处的非肾脏定向二科
Nonreciprocal directional dichroism at telecom wavelengths
论文作者
论文摘要
众所周知,具有超低对称性和自旋轨道耦合的磁性电源表现出许多显着特性,包括非置换方向性二科运动。作为极性和手性磁铁,Ni $ _3 $ teo $ _6 $预计将以三种根本不同的配置托管这种效果,尽管只有两种经过实验验证。灵感来自于揭开这种独特的轻度相互作用的结构质地关系的机会,我们将磁光谱和第一原理计算结合在一起,以揭示圆环几何形状中的非交流性,并将我们的发现与手性构型进行了比较。我们发现,NI环形矩的形成是1.1 eV接近的最大效果 - 我们的微观模型和计算实施捕获的趋势。同时,我们在整个电信波长范围内证明了对Ni $ _3 $ _3 $ _6 $ ni $ _3 $ _3 $ _6 $中非置换方向性二分色的确定性控制。这一发现将加速利用异常对称特征的光子学应用的发展。
Magnetoelectrics with ultra-low symmetry and spin-orbit coupling are well known to display a number of remarkable properties including nonreciprocal directional dichroism. As a polar and chiral magnet, Ni$_3$TeO$_6$ is predicted to host this effect in three fundamentally different configurations, although only two have been experimentally verified. Inspired by the opportunity to unravel the structure-property relations of such a unique light-matter interaction, we combined magneto-optical spectroscopy and first-principles calculations to reveal nonreciprocity in the toroidal geometry and compared our findings with the chiral configurations. We find that formation of Ni toroidal moments is responsible for the largest effects near 1.1 eV - a tendency that is captured by our microscopic model and computational implementation. At the same time, we demonstrate deterministic control of nonreciprocal directional dichroism in Ni$_3$TeO$_6$ across the entire telecom wavelength range. This discovery will accelerate the development of photonics applications that take advantage of unusual symmetry characteristics.